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Trihydroxyflavones with antioxidant and anti-inflammatory efficacy

机译:三羟基黄酮具有抗氧化和抗炎功效

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The classical anti-inflammatory therapies are frequently ineffective and present numerous and severe side effects, especially in long term use, which requires the development of anti-inflammatory drugs with different scaffolds and mechanisms of action. Owing to the high antioxidant potential and anti-inflammatory activities already inferred for hydroxyflavones, we found it would be relevant to evaluate the anti-inflammatory potential of a series of trihydroxyflavones by testing their ability to scavenge reactive oxygen species (ROS) and reactive nitrogen species (RNS) in cells and cell-free systems and to inhibit the proinflammatory pathways mediated by the enzymes cyclooxygenase (COX) and 5-lipoxygenase (5-LOX), in which reactive species have a proven involvement. The tested trihydroxyflavones proved to be effective inhibitors of neutrophils' oxidative burst and were shown to scavenge different ROS and RNS in cell-free systems. The most active compound in the majority of the assays was 3,3′,4′-trihydroxyflavone, which was somehow expected due to the presence of the ortho-dihydroxy in the B-ring, an important structural feature in terms of free radical scavenging activity. Additionally, the studied compounds were able to inhibit the production of leukotriene B _4 by 5-LOX in activated neutrophils. 3,5,7-Trihydroxyflavone was able to inhibit both COX-1 and COX-2, which makes it a dual inhibitor of COX and 5-LOX pathways and, therefore, a promising candidate for a new therapeutic option in the treatment of inflammatory processes.
机译:经典的抗炎疗法经常无效,并且呈现出许多严重的副作用,特别是在长期使用中,这需要开发具有不同支架和作用机制的抗炎药。由于已经推断出羟基黄酮具有很高的抗氧化潜能和抗炎活性,因此我们发现通过测试三羟基黄酮清除活性氧和活性氮的能力来评估其抗炎能力很重要。 (RNS)在细胞和无细胞系统中发挥作用,并抑制由环氧合酶(COX)和5-脂氧合酶(5-LOX)介导的促炎途径,其中活性物质已被证实参与其中。所测试的三羟基黄酮被证明是中性粒细胞氧化爆发的有效抑制剂,并显示在无细胞系统中清除不同的ROS和RNS。在大多数测定中,活性最高的化合物是3,3',4'-三羟基黄酮,这是由于在B环中存在邻二羟基而以某种方式预期的,这是清除自由基的重要结构特征活动。此外,研究的化合物能够抑制5-LOX在活化的中性粒细胞中产生白三烯B _4。 3,5,7-三羟基黄酮能够抑制COX-1和COX-2,这使其成为COX和5-LOX途径的双重抑制剂,因此是治疗炎症的新疗法的有希望的候选者流程。

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